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Optimal power system dispatch with wind power integrated using nonlinear interval optimization and evidential reasoning approach

机译:基于非线性区间优化和证据推理的风电最优电力系统调度

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This paper presents the nonlinear interval optimization (NIO) model to solve optimal power system dispatch (OPSD) with uncertain wind power integrated. In this model, not only the average of the dispatching objective, but its deviation are also taken into account. Therefore, the NIO model based on OPSD is formulated as a multi-objective optimization problem. An optimization algorithm, group search optimizer with multiple producers (GSOMP) is applied to obtain Pareto solutions, which show the tradeoff relationship between the average and deviation of the dispatching objective. Then, a decision-making method, the evidential reasoning (ER) approach, is applied to determine the final dispatch solution. Simulation results based on the modified IEEE 30-bus system prove the applicability and effectiveness of the NIO model to deal with the OPSD, considering the integration of the uncertain wind power.
机译:本文提出了一种非线性区间优化(NIO)模型,用于解决具有不确定风电集成的最优电力系统调度(OPSD)。在该模型中,不仅要考虑调度目标的平均值,还要考虑其偏差。因此,将基于OPSD的NIO模型表述为多目标优化问题。应用优化算法,多生产者组搜索优化器(GSOMP)来获得帕累托解,该算法显示了调度目标的平均值与偏差之间的折衷关系。然后,采用决策方法,即证据推理(ER)方法来确定最终的调度解决方案。基于改进的IEEE 30总线系统的仿真结果证明了NIO模型在考虑不确定风能集成的情况下处理OPSD的适用性和有效性。

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